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Bioplasmonic calligraphy for multiplexed label-free biodetection

机译:生物等离子体书法用于多重无标记生物检测

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摘要

Printable multi-marker biochips that enable simultaneous quantitative detection of multiple target biomarkers in point-of-care and resource-limited settings are a holy grail in the field of biodiagnostics. However, preserving the functionality of biomolecules, which are routinely employed as recognition elements, during conventional printing approaches remains challenging. In this article, we introduce a simple yet powerful approach, namely plasmonic calligraphy, for realizing multiplexed label-free bioassays. Plasmonic calligraphy involves a regular ballpoint pen filled with biofunctionalized gold nanorods as plasmonic ink for creating isolated test domains on paper substrates. Biofriendly plasmonic calligraphy approach serves as a facile method to miniaturize the test domain size to few mm2, which significantly improves the sensitivity of the plasmonic biosensor compared to bioplasmonic paper fabricated using immersion approach. Furthermore, plasmonic calligraphy also serves as a simple and efficient means to isolate multiple test domains on a single test strip, which facilitates multiplexed biodetection and multi-marker biochips. Plasmonic calligraphy, which can be potentially automated by implementing with a robotic arm, serves as an alternate path forward to overcome the limitations of conventional ink-jet printing.
机译:在医疗现场和资源有限的环境中,可同时定量检测多个目标生物标记的可印刷多标记生物芯片是生物诊断领域的圣杯。然而,在常规印刷方法中,保留通常用作识别元件的生物分子的功能仍然具有挑战性。在本文中,我们介绍了一种简单但功能强大的方法,即等离子书法,用于实现无标记的多重生物测定。等离子书法涉及一种普通的圆珠笔,填充有生物功能化的金纳米棒作为等离激元墨水,用于在纸质基材上创建孤立的测试区域。生物友好的等离子书法方法是一种方便的方法,可将测试区域的尺寸最小化至几平方毫米,与使用浸入法制造的生物等离子纸相比,它可显着提高等离子生物传感器的灵敏度。此外,等离激子书法还可以作为一种简单有效的方法来隔离单个测试条上的多个测试域,这有助于进行多重生物检测和多标记生物芯片。等离子书法可以通过机械臂实现自动化,从而成为克服常规喷墨打印的局限性的替代途径。

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